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首页> 外文期刊>The Journal of Prosthetic Dentistry >Effect of core stiffness on the in vitro fracture of crowned, endodontically treated teeth.
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Effect of core stiffness on the in vitro fracture of crowned, endodontically treated teeth.

机译:核心硬度对冠状牙髓治疗牙齿的体外骨折的影响。

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Statement of Problem. Dentin and core materials that substitute for missing dentin are dissimilar materials. A core material with a lower elastic modulus may deform more under applied stress and therefore result in reduced stress concentration at the core/dentin junction. Purpose. This in vitro study examined the effect of core stiffness on the fracture resistance and failure characteristics of a crowned, endodontically treated tooth under simulated occlusal load. Material and Methods. Forty extracted human mandibular premolars were divided equally into 4 groups and prepared for posts and cast crowns as follows: group 1 = cast post and core, cast crown; group 2 = preformed metal post, composite core, and cast crown; group 3 = preformed metal post, amalgam core, and cast crown; and group 4 (control) = preformed metal post, no core, and cast crown. All prepared teeth had 2 mm of sound dentin on which the cemented crown rested. A continuous load (kg) was applied to the buccal cusp at a 30-degree angle to the long axis of each tooth at a crosshead speed of 2 mm/min until failure. Collected data were subjected to 1-way analysis of variance with the Welch modification to compare groups (P<.05). Results. Failure loads for the 4 test groups were as follows: 98.1 +/- 34.6 kg (group 1), 94.4 +/- 41.8 kg (group 2), 105.5 +/- 18.6 kg (group 3), and 101.1 +/- 55.3 kg (group 4). No significant difference in failure load values was found among the 4 groups. The primary mode of failure (80%) in all groups was an oblique radicular fracture, either apical to the post or at the post level. Horizontal fracture of the root and post was found in groups 1, 2, and 3 (20%). Loosening of the crown, post, and core was found only in group 2(20%). Conclusion. Within the limitations of this study, core stiffness did not affect the failure resistance of teeth restored with posts and cores and complete-coverage cast metal crowns. The dominant pattern of failure was unrepairable root fracture. Only the composite core exhibited repairable fractures.
机译:问题陈述。牙本质和替代缺失牙本质的核心材料是不同的材料。具有较低弹性模量的芯材料在施加的应力下可能会变形更大,因此导致芯/牙本质接合处的应力集中减小。目的。这项体外研究检查了在模拟咬合负荷下,芯刚度对加冠,经牙髓治疗的牙齿的抗断裂性和破坏特性的影响。材料与方法。将四十个提取的人类下颌前磨牙平均分为4组,并按以下步骤准备牙柱和牙冠:第1组=牙柱和心核,牙冠;第2组=预制金属桩,复合芯和铸冠;第3组=预制金属桩,汞合金芯和铸冠;第4组(对照组)=预制金属桩,无型芯和铸冠。所有准备好的牙齿均具有2毫米的健全牙本质,牙冠位于其上。以2 mm / min的十字头速度,以与每个牙齿的长轴成30度角的连续载荷(kg)施加到颊尖,直到失败。使用Welch修改对收集的数据进行方差的1向分析,以比较各组(P <.05)。结果。 4个测试组的失败载荷如下:98.1 +/- 34.6 kg(第1组),94.4 +/- 41.8 kg(第2组),105.5 +/- 18.6 kg(第3组)和101.1 +/- 55.3公斤(第4组)。 4组之间的失效载荷值无显着差异。在所有组中,主要的失败方式(80%)是根尖的根部或根部水平的根尖根部骨折。在第1、2和3组(20%)中发现根和桩的水平骨折。仅在第2组中发现冠,柱和芯的松动(20%)。结论。在本研究的范围内,芯刚度不影响使用支柱和芯以及完全覆盖的铸造金属牙冠修复的牙齿的抗故障能力。失败的主要模式是无法修复的根部骨折。仅复合材料芯表现出可修复的断裂。

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